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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Signatures of the 3-day wave in the low-latitude and midlatitude ionosphere during the January 2010 URSI World Day campaign
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Signatures of the 3-day wave in the low-latitude and midlatitude ionosphere during the January 2010 URSI World Day campaign

机译:签名低纬度的为期三天的波在1月和中间纬度电离层2010天世界无线电运动

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摘要

Recent studies of the equatorial ionosphere have found evidence of forcing by atmospheric Ultra Fast Kelvin (UFK) waves. This study investigates the quasi-3-day UFK wave and its effects on the variations of the ionosphere at low latitudes and midlatitudes using coordinated observations of both the atmosphere and ionosphere during the January 2010 URSI World Day campaign. The global maps of TEC from the IGS ground-based GPS product demonstrate a 3-day periodic variation during January 15-25. This variation has the largest amplitude at 15° magnetic latitude and extends into lower latitudes. Simultaneously, a 3-day wave is observed in the mesosphere in the zonal wind measurements by a meteor radar at the magnetic equator. The latitudinal range of the TEC variation(20°S-20°N)is also consistent with that of the 3-day wave. The Incoherent Scatter Radar(ISR)observations show a 3-day signature in vertical ion drifts over Jicamarca(11.9°S, 76°W)and in the electron densities in the top side of ionosphere measured from Millstone Hill(42.6°N, 71.5°W). This signature is consistent with the fountain effect in the equatorial region, and shows the impact on the topside ionosphere at midlatitudes. The UFK wave is trapped within ±30° geographic latitude, but this study shows that the effects of the wave could reach the ionosphere at the higher latitude even as high as 40°N(50°N magnetic latitude).
机译:最近的赤道电离层的研究发现大气超的强迫快开尔文(UFK)波。的quasi-3-day UFK波和它的影响低纬度和低电离层的变化使用协调观察情理之中大气和电离层2010年1月无线电世界一天活动。地图的TEC IGS地面GPS产品演示期间为期3天的周期性变化1月15 - 25。振幅在15°磁纬度和延伸在低纬度地区。纬向波在中间层风一颗流星雷达测量的磁赤道。TEC变化(20°20°N)也是一致的为期3天的波。雷达(ISR)观察显示为期3天的签名垂直离子漂移Jicamarca(11.9°,76°W)和电子密度的顶部从磨石电离层的测量希尔(42.6°N, 71.5°W)。符合的喷泉效应赤道地区,显示了影响上部电离层在情理之中。被困在±30°地理纬度,但这项研究表明,波浪的影响可能达到更高纬度的电离层甚至高达40°N(50°N磁纬度)。

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